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FIGURE 3 in A new solar powered species of the genus Phyllodesmium Ehrenberg, 1831 (Mollusca: Nudibranchia: Aeolidoidea) from Indonesia with analysis of its photosynthetic activity and notes on biology
FIGURE 3: Phyllodesmium jakobsenae, hard structures in digestive system: A: Right jaw seen from the outside. B: Left jaw from the inside, denticles at the masticatory border seen from the inside. C: Distal part of radula of specimen No. 5. D: Closeup of distal part of radula of specimen No. 5; note the worn denticles on the edge of the rhachidian teeth .. E: Distal part of radula of specimen No. 3. F: Different angle of view of rhachidian cusps from No. 3. G: Part of the radula of specimen No. 3.
FIGURE 4 in A new solar powered species of the genus Phyllodesmium Ehrenberg, 1831 (Mollusca: Nudibranchia: Aeolidoidea) from Indonesia with analysis of its photosynthetic activity and notes on biology
FIGURE 4: Phyllodesmium jakobsenae, histology: A: View of ceras from side orientated to light. Note the dense branches along the whole ceras. B: View of ceras from side orientated away from light. Note the main branch of digestive gland and the fewer ramifications. C: Cnidosac of large ceras with no nematocysts. D: Digestive glandular branches beneath epidermis in large ceras. Note the many zooxanthellae especially in the digestive glandular tissue. E: Longitudinal section of small ceras with cnidosac. The digestive glandular duct is not branching, and shows glandular cells. The cnidosac is filled with many tiny nematocysts. The epidermis shows many glandular cells, beneath the epidermis a layer of “ cellules spéciales ” can be seen. F: Section trough eye and statocyst with one statolith. G: Small part of the oral gland with outleading duct. Abbreviations: cn cnidosac, cs “ cellules spéciales ”, e eye, mc mucous cells, st statocyst.
FIGURE 1 in A new solar powered species of the genus Phyllodesmium Ehrenberg, 1831 (Mollusca: Nudibranchia: Aeolidoidea) from Indonesia with analysis of its photosynthetic activity and notes on biology
FIGURE 1: Phyllodesmium jakobsenae, living animals from North Sulawesi: A: Specimen laying eggs in an aquarium. B: Two specimens sitting in their food coral Xenia: on the right side a specimen with more brownish cerata and to the left a bigger specimen with more whitish cerata. Polyps of Xenia surround both individuals. C: Bigger specimen from B; please note the smaller cerata in the anterior part of body and the oral tentacles stretched to the lateral sides. D: Animal sitting inactive and mimicking Xenia polyps. E: Specimen starting to crawl.
Fig. 2. Javania erhardti, A-C, F in A New Shallow-Water Species Of Javania (Scleractinia: Flabellidae) From Indonesia
Fig. 2. Javania erhardti, A-C, F, holotype; D, G, paratype from Canibal Rock, 43 m, USNM 1010489; E, H, paratype from Canibal Rock, 44 m, USNM 1010485; I, paratype from Canibal Rock, 42 m, USNM 1010483: A, B, calicular and oblique calicular views, x 1.75; C, edge view of holotype, x 2.25; D, G, broken corallum showing loculated basal region caused by boring sponges, x 1.75, 3.0, respectively; E, H, cross section of a base showing small canals connecting sponge chambers and concentric bands of tectura, x 1.75 x 4.4, respectively; F, upper theca showing efferent pores of boring sponges, x 1.75; I, calicular view, x 1.6.
Fig. 1 in A New Shallow-Water Species Of Javania (Scleractinia: Flabellidae) From Indonesia
Fig. 1. Javania erhardti, in situ photograph of paratype from Canibal Rock, Isla Rinca (USNM 1010487), x 1.75 (Photo by Harry Erhardt).
Fig. 2 in A New Frog (Anura, Dicroglossidae), Related To Occidozyga Semipalmata Smith, 1927, From The Eastern Peninsula Of Sulawesi, Indonesia
Fig. 2. Occidozyga semipalmata from Lore Lindu, proximity of Kebun Kopi showing the flattened finger disks ornamented with a white bar. Photo by T. C. Wanger.
Fig. 3 in A New Frog (Anura, Dicroglossidae), Related To Occidozyga Semipalmata Smith, 1927, From The Eastern Peninsula Of Sulawesi, Indonesia
Fig. 3. Dorsal (A) and ventral (B) aspect of the female holotype (SVL 34.1 mm) of Occidozyga tompotika. Folds on the dorsum are partially an artifact from paper towel during preservation. Photo by D. T. Iskandar.
Fig. 1 in A New Frog (Anura, Dicroglossidae), Related To Occidozyga Semipalmata Smith, 1927, From The Eastern Peninsula Of Sulawesi, Indonesia
Fig. 1. Map of Sulawesi showing the distribution of Sulawesian Occidozyga. Legend: Circle, Occidozyga semipalmata; small circles denote localities with one or two specimens; Circle, Mount Lompobatang (the type locality); Star, Occidozyga tompotika; Inverted triangle, Occidozyga celebensis. Map modified from Google map.
Fig. 4 in A New Ingerana (Anura, Dicroglossidae) With No External Tympanum From Borneo, Indonesia
Fig. 4. Comparison between adults of Ingerana rajae (SVL 40.1 mm) and Ingerana baluensis (SVL 21 mm). Photo by D. T. Iskandar.
Fig. 3. A in A New Ingerana (Anura, Dicroglossidae) With No External Tympanum From Borneo, Indonesia
Fig. 3. A very pale female from the type locality, photographed in 2008 (not collected). Photo by Mediyansyah.
Fig. 2 in A New Ingerana (Anura, Dicroglossidae) With No External Tympanum From Borneo, Indonesia
Fig. 2. The ventral aspect of the holotype (SVL 40.1 mm) and adult paratype (SVL 34.6 mm) of Ingerana rajae.
Fig. 1 in A New Ingerana (Anura, Dicroglossidae) With No External Tympanum From Borneo, Indonesia
Fig. 1. Lateral side of Ingerana rajae (Holotype, SVL 40.1 mm) in the natural habitat. Photo by D. P. Bickford.
Figs 1–6 in Two new species of the genus Panau (Lepidoptera: Cossidae) from the Philippines and Indonesia, with the redescription of Panau variegatum
Figs 1–6. Panau spp., males (holotypes). 1–2, P. variegatum (Roepke, 1957); 3–4, P. lourensi sp. nov.; 5–6, P. tanimbari sp. nov. Habitus in dorsal view and labels (1); habitus in dorsal view (3, 5); male genitalia in frontal view and aedeagus in lateral view (2, 4, 6). Scale bars (1, 3, 5): 1 mm.
Fig. 4. A in A new species of Anaglyphula Rensch, 1932 from an island off the coast of West Indonesia, with redescription of the type species (Gastropoda: Caenogastropoda: Assimineidae)
Fig. 4. A, Putative constriction position of Anaglyphula yanseni, new species, holotype MZB.Gst. 23.829; B, Constriction of Anaglyphula cancellata Rensch, 1932, syntype NHMUK 1897.8.3.150; C, Constriction of Anaglyphula whitteni Vermeulen, 1996, paratype NHMUK 20000247. Not to scale.
Fig. 1. Anaglyphula cancellata Rensch, 1932, syntype NHMUK 1897.8.3.150. A in A new species of Anaglyphula Rensch, 1932 from an island off the coast of West Indonesia, with redescription of the type species (Gastropoda: Caenogastropoda: Assimineidae)
Fig. 1. Anaglyphula cancellata Rensch, 1932, syntype NHMUK 1897.8.3.150. A, Shell; B, Upper whorls; C, Structure on body whorl; D, Detailed structure on penultimate whorl.
Fig. 3 in A new species of Anaglyphula Rensch, 1932 from an island off the coast of West Indonesia, with redescription of the type species (Gastropoda: Caenogastropoda: Assimineidae)
Fig. 3. Anaglyphula yanseni, new species, holotype MZB.Gst. 23.829. A–B, Shell; A, Visible light camera images; B, SEM images; C, Protoconch; D, Detailed structure on upper body whorl; E, Detailed structure on lower body whorl.
Fig. 2. A in A new species of Anaglyphula Rensch, 1932 from an island off the coast of West Indonesia, with redescription of the type species (Gastropoda: Caenogastropoda: Assimineidae)
Fig. 2. A, Anaglyphula cancellata Rensch, 1932, syntype NHMUK 1897.8.3.149; B–C, Anaglyphula whitteni Vermeulen, 1996, Paratype. NHMUK 20000247; B, Shell; C, Ribbing structure details.
Fig. 5. Acmella species. A in A new species of Anaglyphula Rensch, 1932 from an island off the coast of West Indonesia, with redescription of the type species (Gastropoda: Caenogastropoda: Assimineidae)
Fig. 5. Acmella species. A, Acmella cf. tersa, NHMUK; B, Acmella moreletiana G. Nevill, 1878, NHMUK 1891.3.17.944–7; C, Acmella mellilla Godwin-Austen, 1895, NHMUK 1903.7.1.1698.
Figs 27–30 in New Acantharadus And Kema Species (Hemiptera, Heteroptera, Aradidae) From Halmahera Island, Indonesia
Figs 27–30. Kema spp.: 27 = K. papuasica Kormilev, 1971, holotype male; 28 = K. bloetei Using- er et Matsuda, 1959, holotype male; 29 = K. lobulata (Kormilev, 1953) holotype male (repro-
Figs 23–26 in New Acantharadus And Kema Species (Hemiptera, Heteroptera, Aradidae) From Halmahera Island, Indonesia
Figs 23–26. Kema spp.: 23–24 = K. pamae sp. n., holotype female and paratype male, 25–26 = K. acutissima Kormilev, 1971, 23, 25 = females, 24, 26 = males
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.